首尔大学、KAIST、延世大学等韩国QS前10名大学的研究室信息。
Professor Jin Nam Choi's research lab specializes in organizational behavior, with a focus on creativity, innovation, and proactive work behaviors. The lab investigates psychological mechanisms underlying individual performance, particularly how motivation, self-efficacy, and organizational contexts shape creativity, knowledge sharing, and organizational citizenship behaviors—especially change-oriented forms. Research also explores the role of training, rewards, and time management in fostering innovation and adaptive employee behaviors.
Professor Young Dae Kim's research lab focuses on cerebrovascular and cardiovascular diseases, particularly the interplay between metabolic disorders such as NAFLD and sarcopenia with stroke and atherosclerotic cardiovascular disease (ASCVD). The lab investigates vascular risk factors, early intervention strategies in stroke, and the role of clinical scores like CHADS2 in predicting cerebrovascular pathology. A key emphasis is placed on understanding disease progression in aging and urbanized populations, especially in East Asian countries, and optimizing treatment protocols for acute conditions like variceal bleeding in liver cirrhosis.
Professor Joo Yong Lee's research lab specializes in urological interventions, with a primary focus on minimally invasive and endourological treatments for urological stones and prostate cancer. The lab conducts high-quality systematic reviews and meta-analyses to evaluate the efficacy and safety of procedures such as percutaneous nephrolithotomy (PCNL), shock wave lithotripsy (SWL), and retrograde intrarenal surgery (RIRS) for renal stones. It also investigates postoperative complications, particularly lymphocele formation after robot-assisted radical prostatectomy, identifying key clinical risk factors. The lab’s work emphasizes evidence-based optimization of surgical outcomes in urology.
Professor Youngmee Jung's research lab specializes in tissue engineering and regenerative medicine, focusing on the development of advanced biomaterials and scaffolds for cartilage, bone, vascular, and organ regeneration. The lab pioneers innovative strategies such as 3D bioprinting, scaffold-free tissue constructs, and stimuli-responsive drug delivery systems to enhance tissue repair and functional integration. Key research directions include designing bioactive nanofibers, elastic biodegradable polymers, and implantable hyperthermia platforms for on-demand cancer therapy. The lab emphasizes mechanobiological cues and dynamic culture systems to improve the mechanical and biological performance of engineered tissues.
Professor Youngsang Cho's research lab focuses on sustainable technology adoption, energy policy, and socio-economic evaluation of emerging technologies. The lab investigates consumer preferences for electric vehicles, vehicle-to-grid systems, and assistive technologies, integrating econometric modeling and survey-based valuation methods. It also explores the optimization of energy research and development investment for economic growth and the thermal management of advanced mobile chip design. The lab’s work bridges engineering, environmental science, and behavioral economics to support policy and innovation in clean energy and smart technologies.
Professor Sung Hae Kim's research lab specializes in nursing science with a focus on improving patient and caregiver outcomes across chronic illness, cancer survivorship, and disaster preparedness. The lab investigates psychosocial and psychometric factors such as self-efficacy, emotional intelligence, and quality of life in diverse nursing populations, including caregivers of individuals with Parkinson’s disease and breast cancer survivors. A key direction involves developing and validating culturally adapted assessment tools, such as the Korean version of the Disaster Response Self-Efficacy Scale, to enhance nursing education and practice. The lab also emphasizes evidence-based interventions and core competency training in oncology and critical care nursing.
Professor Hwanjo Yu's research lab specializes in data mining, machine learning, and knowledge discovery with a strong focus on privacy-preserving analytics, scalable learning algorithms, and biomedical data applications. The lab develops advanced methods for large-scale and distributed data mining, including privacy-preserving support vector machines and clustering-based learning techniques, while addressing real-world challenges in healthcare informatics through synthetic data generation and efficient literature search systems. Their work bridges theoretical rigor with practical deployment in domains such as electronic health records, high-dimensional omics data, and biomedical knowledge discovery.
Professor Oh Seok Kwon's research lab specializes in the development of advanced nanomaterials and bioelectronic devices for biomedical and environmental sensing applications. The lab focuses on designing flexible, high-sensitivity sensors using conductive polymers and graphene-based nanomaterials, with a strong emphasis on molecular recognition and real-time detection of biological and chemical analytes. Key research directions include the integration of nanomaterials with biological receptors and aptamers for next-generation biosensors, as well as the engineering of nanostructured surfaces to enhance sensing performance. The lab also pioneers artificial sensory systems, such as multiplexed bioelectronic noses and liquid-gated field-effect transistors, to mimic human sensory functions.
Professor Tao Yu's research lab focuses on the molecular mechanisms underlying chronic inflammatory diseases, with a particular emphasis on the role of key signaling molecules such as TBK1 and epigenetic regulators in disease progression. The lab investigates non-coding RNAs, especially tRNA-derived small RNAs (tsRNAs), and their regulatory functions in inflammation, cancer, and cardiovascular diseases. Additionally, the lab explores the pathogenesis of drug-induced toxicity—such as doxorubicin-induced cardiotoxicity—and the role of endogenous toxins like formaldehyde in vascular damage, aiming to identify novel therapeutic targets.
Professor Hyuk-Jin Cha's research lab focuses on cellular signaling mechanisms underlying DNA damage response, cancer metastasis, and stem cell senescence. The lab investigates key molecular players such as gamma-H2AX, E-cadherin, and MAP kinase pathways (including ERK and p38) in maintaining genomic stability, regulating epithelial-mesenchymal transition (EMT), and controlling cell cycle progression. Using advanced techniques like phospho-specific antibodies and immunofluorescence, the lab explores post-translational modifications and their functional impacts in cancer and regenerative biology. A central theme is understanding how dysregulation of these pathways contributes to disease, particularly in non-small cell lung cancer and mesenchymal stem cells.
Professor Seungnyun Kim's research lab specializes in next-generation wireless communication systems, with a strong focus on enhancing spectral and energy efficiency in advanced 5G and 6G networks. The lab explores cell-free massive MIMO, terahertz (THz) communications, and ultra-dense networks, emphasizing practical challenges such as CSI feedback reduction, beam management, and energy-efficient network operation. By leveraging channel reciprocity, advanced signal processing, and integration with sensing and computer vision technologies, the lab aims to enable intelligent, high-capacity, and low-latency wireless systems for future applications.
Professor Jung-Woo Park's research lab specializes in geochemistry, with a focus on the petrogenesis of metal-rich magmas and the origin of porphyry copper-gold deposits. The lab investigates chalcophile element behavior, platinum group elements (PGEs), and trace element partitioning in magmatic systems, particularly in arc and intraplate volcanic settings. Using advanced analytical techniques such as LA-ICP-MS and NiS fire assay with isotope dilution, the lab explores the controls on PGE and chalcophile element enrichment in magmas, minerals (e.g., Cr-spinel), and crustal materials like loess. Their work contributes to understanding the formation mechanisms of economically significant hydrothermal ore deposits.
Professor Jung-Suk Han's research lab specializes in advanced biomaterials and digital dentistry, focusing on the development of zirconia-based composites for dental implants and prosthetic applications, with an emphasis on mechanical performance, biocompatibility, and long-term clinical stability. The lab also pioneers the application of artificial intelligence and deep learning in dental imaging, particularly in automated detection and segmentation of anatomical structures in panoramic and periapical radiographs. Research spans from material science innovations to clinical translation, integrating cutting-edge technologies such as augmented reality and panoptic segmentation for improved diagnostic accuracy and treatment planning.
Professor Cheol-Joo Kim's research lab specializes in the synthesis, characterization, and application of low-dimensional semiconductor nanostructures, with a focus on group IV nanomaterials such as silicon-germanium alloys, germanium nanowires, and hexagonal boron nitride. The lab explores novel growth techniques for high-quality nanowires and 2D materials, emphasizing control over structural, electronic, and optical properties through precise engineering of composition, diameter, and stacking order. Key research directions include nanowire-based photodetectors, field-effect transistors, and van der Waals heterostructures for next-generation nanoelectronics and optoelectronics.
Professor Hyunggun Kim's research lab specializes in biomedical engineering and computational biomechanics, focusing on the development of personalized computational models for heart valve function and disease. The lab integrates patient-specific medical imaging, advanced finite element analysis, and innovative biomaterials to study valve mechanics, tissue degeneration, and tissue engineering applications. Research also extends to agricultural machine vision using weakly supervised deep learning and in vivo imaging techniques for early detection of vascular pathologies.
Professor Jae-Hyun Lee's research lab specializes in the development of advanced two-dimensional (2D) materials and their applications in next-generation electronic, photonic, and energy devices. The lab focuses on scalable synthesis of single-crystalline 2D materials—particularly graphene and amorphous carbon allotropes—using innovative epitaxial growth techniques on single-crystalline substrates such as germanium. Key research directions include defect engineering for enhanced ion and proton transport in 2D membranes, transparent and flexible electromagnetic shielding films, and electrochemical catalysis for sustainable chemical conversion, such as methane-to-methanol transformation. The lab also pioneers ultrasensitive pH sensors by exploiting proton permeability in engineered graphene layers, pushing beyond classical physical limits.
Professor Yong Pyo Kim's research lab specializes in atmospheric chemistry and environmental modeling, with a focus on the thermodynamics and gas-particle equilibrium of inorganic and organic aerosols. The lab develops and applies advanced computational models—such as SCAPE—to predict the phase partitioning, composition, and activity coefficients of atmospheric species, including secondary inorganic aerosols and hazardous air pollutants. Research also emphasizes the impact of policy on air quality, particularly in urban environments like Seoul, and investigates emerging pollutants such as nitrosamines and nitramines in fine particulate matter. The lab integrates experimental measurements with model validation to improve understanding of aerosol formation, transformation, and environmental health impacts.
Professor Ji Woon Park's research lab focuses on the intersection of orofacial pain, temporomandibular disorders (TMD), and systemic health factors, particularly sleep disorders and psychological comorbidities. The lab investigates the long-term structural changes in the TMJ using advanced imaging techniques like CT, explores the impact of oral appliance therapy on headache in OSA patients, and examines the role of somatization and psychological distress in TMD. Additionally, the lab contributes to environmental health by modeling particulate control in electrostatic precipitators, reflecting a multidisciplinary approach to health and environmental science.
Professor Soogab Lee's research lab specializes in aeroacoustics and computational fluid dynamics, with a primary focus on noise generation mechanisms in rotary-wing aircraft and complex flow systems. The lab investigates blade-vortex interaction noise, rotor blade design optimization, muzzle blast noise, and stochastic acoustic characteristics in multirotor systems using advanced numerical simulations and experimental validation. Key research directions include high-fidelity flow and noise prediction, turbulence modeling with surface transpiration effects, and community response to transportation noise. The lab integrates cutting-edge CFD methods with acoustic analysis to address real-world aeronautical noise challenges.
Professor Hak Lae Lee's research lab specializes in advanced paper science and coating technologies, focusing on enhancing the barrier, mechanical, and surface properties of cellulosic paper through innovative polymer coatings and additive formulations. Key research directions include the development of PVA-based and styrene-acrylate latex binders with functional monomers like HEMA to improve film formation and coating structure, as well as the application of advanced imaging techniques such as FIB-SEM and smart image analysis for precise characterization of coating microstructures. The lab also investigates flocculation processes in papermaking to optimize filler distribution and paper performance. Their work bridges materials science, polymer chemistry, and paper engineering to enable high-performance, sustainable paper-based materials.